Jarmuła Adam, Cieplak Piotr, Leś Andrzej, Rode Wojciech
Nencki Institute of Experimental Biology, Polish Academy of Sciences, 3 Pasteur St., 02-093 Warszawa, Poland.
J Comput Aided Mol Des. 2003 Oct;17(10):699-710. doi: 10.1023/b:jcam.0000017377.07094.2e.
Free energy perturbation calculations have been applied to evaluate the relative free energies of binding of 2'-deoxyuridine-5'-monophosphate (dUMP) and its 2- and/or 4-thio and/or 5-fluoro analogues to the wild-type E. coli thymidylate synthase (ecTS). The results accurately reproduce experimentally measured differences in the free energy of binding of dUMP versus 5-fluoro-dUMP to thymidylate synthase. They indicate that preferred binding of dUMP compared to 5-fluoro-dUMP in the binary complex is equally related to (i) more favorable electrostatic interactions of the dUMP molecule in the enzyme active site, and (ii) its less favorable solvation in the aqueous solution. The relative free energies of binding in the binary complex show moderate and qualitatively indistinguishable discrimination among the studied fluorinated and non-fluorinated 2- and/or 4-thio analogues of dUMP. The binding free energies of monothio analogues of dUMP and 5-fluoro-dUMP correspond quite well with experimentally measured activities of these nucleotides in the thymidylate synthase reaction. On the other hand, the binding free energies of both dithio analogues, 2,4-dithio-dUMP and 2,4-dithio-FdUMP, show lack of such correlation. The latter suggests that very low activities of the dithio analogues of dUMP and 5-fluoro-dUMP may relate more to the covalent reaction of these nucleotides within the ternary complex with TS and 5,10-methylenetetrahydrofolate, than to their pre-covalent binding. We speculate that a lack of substrate activity of 2,4-dithio-dUMP is related to the high aromaticity of its pyrimidine ring that prevents the Michael addition of the active site cysteine thiol to the pyrimidine C6 atom. A stronger affinity of the fluorinated analogues of dUMP to thymidylate synthase, compared to the non-fluorinated congeners, results from the fluorine substituent producing a local strain in the C6 region in the pyrimidine ring, thus sensitizing C6 to the Michael addition of the cysteine thiol.
自由能微扰计算已被用于评估2'-脱氧尿苷-5'-单磷酸(dUMP)及其2-和/或4-硫代和/或5-氟类似物与野生型大肠杆菌胸苷酸合成酶(ecTS)结合的相对自由能。结果准确地重现了实验测量的dUMP与5-氟-dUMP与胸苷酸合成酶结合自由能的差异。结果表明,在二元复合物中,dUMP比5-氟-dUMP更优先结合,这同样与以下两点有关:(i)dUMP分子在酶活性位点中更有利的静电相互作用,以及(ii)其在水溶液中较差的溶剂化作用。二元复合物中结合的相对自由能在研究的dUMP的氟化和非氟化2-和/或4-硫代类似物之间显示出适度且在定性上难以区分的差异。dUMP和5-氟-dUMP的单硫代类似物的结合自由能与这些核苷酸在胸苷酸合成酶反应中的实验测量活性相当吻合。另一方面,两种二硫代类似物2,4-二硫代-dUMP和2,4-二硫代-FdUMP的结合自由能均未显示出这种相关性。后者表明,dUMP和5-氟-dUMP的二硫代类似物的极低活性可能更多地与这些核苷酸在三元复合物中与TS和5,10-亚甲基四氢叶酸的共价反应有关,而不是与其预共价结合有关。我们推测,2,4-二硫代-dUMP缺乏底物活性与其嘧啶环的高芳香性有关,这阻止了活性位点半胱氨酸硫醇对嘧啶C6原子的迈克尔加成。与非氟化同系物相比,dUMP的氟化类似物对胸苷酸合成酶具有更强的亲和力,这是由于氟取代基在嘧啶环的C6区域产生局部应变,从而使C6对半胱氨酸硫醇的迈克尔加成更敏感。